Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

F Soriano, L Virág, C Szabó - Journal of molecular medicine, 2001 - Springer
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

Diabetic endothelial dysfunction: Role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

F Soriano, L Virág, C Szabó - Journal of Molecular …, 2001 - researchexperts.utmb.edu
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

FG Soriano, L Virag, C Szabo - Journal of Molecular Medicine, 2001 - elibrary.ru
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

FG Soriano, L Virág, C Szabó - Journal of molecular …, 2001 - pubmed.ncbi.nlm.nih.gov
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

[PDF][PDF] Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

FG Soriano, L Virág, C Szabó - J Mol Med, 2001 - academia.edu
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation.

F Soriano, L Virág, C Szabó - Journal of Molecular Medicine, 2001 - search.ebscohost.com
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation.

FG Soriano, L Virág, C Szabó - Journal of Molecular Medicine …, 2001 - europepmc.org
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

[PDF][PDF] Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

FG Soriano, L Virág, C Szabó - J Mol Med, 2001 - researchgate.net
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

F Soriano, L Virág, C Szabó - Journal of Molecular Medicine, 2001 - infona.pl
Peroxynitrite and hydroxyl radicals are potent initiators of DNA single-strand breakage,
which is an obligatory stimulus for the activation of the nuclear enzyme poly (ADP ribose) …

[引用][C] Diabetic endothelial dysfunction: role of reactive oxygen and nitrogen species production and poly (ADP-ribose) polymerase activation

F GARCIA SORIANO, L VIRAG… - Journal of molecular …, 2001 - pascal-francis.inist.fr
Diabetic endothelial dysfunction : role of reactive oxygen and nitrogen species production
and poly(ADP-ribose) polymerase activation CNRS Inist Pascal-Francis CNRS Pascal and …